國立臺灣大學機械工程學系
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楊燿州
中文姓名:楊燿州
職稱:特聘教授
最高學歷:美國 麻省理工學院 電機工程博士
英文姓名:Yao-Joe Joseph Yang
Email:yjy@ntu.edu.tw
聯絡電話:02-23646491
辦公室: 機械館604室
影響區域: 創新
研究所組別: 製造組
實驗室: 微機電實驗室 (機械館610室)
個人簡介
  • 個人簡介
  • 研究領域
  • 教學課程
  • 研究計畫
  • 研究著作

學歷

 

麻省理工學院, 電機博士
麻省理工學院, 電機碩士
加州大學洛杉磯分校, 機械碩士

台灣大學, 機械學士

 

 

自傳

 

  楊燿州博士於麻省理工學院獲得電機碩士及電機博士學位。他亦是加州大學洛杉磯分校的機械碩士,與國立台灣大學的機械學士。楊博士於1999年取得博士學位後,在美國Coventor公司(麻州劍橋市)任職資深工程師一年,隨即開始任教於國立台灣大學機械工程學系,目前擔任教授職位,亦是台大特聘教授(Distinguished Professor)。

  自2011年至2017年止,楊博士曾擔任系主任暨研究所所長,並於2017-2023年借調至國家實驗研究院擔任台灣儀器科技研究中心的主任。目前楊博士擔任國科會自動化學門召集人,亦是國際電機工程師學會(IEEE)儀器量測群(IMS)台灣分會的理事長、美國機械工程師學會(ASME)台灣分會理事長,與中華民國自動化學會常務理事。楊博士是美國機械工程師學士會士(ASME Fellow)、中華民國自動化學會會士(CIAE Fellow)、及IEEE資深會員。

  楊博士的研究興趣包括微機電系統及設計與製作、奈米技術、智慧節能光機電系統、可撓式感測陣列、無線感測器網路及平行運算等。他是國科會傑出研究獎的得主,並曾獲得國科會吳大猷先生紀念獎(傑出年輕學者獎),亦獲選為台大績優研究人員。

 

 

 

 

 

 

研究專長

 

微奈米元件之設計與製造、微感測陣列元件、智慧節能光機電系統、微流體生醫元件、光通訊元件、奈微米量測系統、降階精簡演算法等項目。

 

實驗研究方向

 

更多研究內容請參考 微機電實驗室

期刊論文  (Journal Papers):Corresponding Author(通訊作者)*

 

  1. Y.-J. Chen, Y.-C. Chen, C.-L. Huang, and Y.-J. Yang*, “Light-Driven Soft Crawling Robots Capable of Multidirectional Locomotion and Cargo Transport,” Sensors and Actuators A: Physical , Vol. 378, 115777 (2024) (SCI/SCIE) (doi: 10.1016/j.sna.2024.115777)
  2. L.-Y. Lo, P.-T. Lin, C.-Y. Cho, H.-Y. Wang, and Y.-J. Yang*, “Miniaturized Ionogel-Based Bi-stable Actuator with State-sensing Capability,” Sensors and Actuators A: Physical, Vol. 370, 115220 (2024) (SCI/SCIE) (doi: 10.1016/j.sna.2024.115220)
  3. Y.-L. Chi, W.-Y. Wang, and Y.-J. Yang*, “A miniaturized soft actuator based on liquid crystal elastomer with temperature-compensated self-sensing capability,” Sensors and Actuators A: Physical, Vol. 370, 115257 (2024) (SCI/SCIE) (doi: 10.1016/j.sna.2024.115257)
  4. Y.-H. Chiu, C.-Y. Cho, J.-J. Hsu, S.-F. Hung, C.-L. Huang, and Y.-J. Yang*, “Synthesizing Microfluidic Networks of One-Step-Dilution Gradient Generators with Arbitrary Concentration Profiles,” Sensors and Actuators A: Physical,(2023) (SCI/SCIE)(doi: 10.1016/j.sna.2023.114550)
  5. C.-Y. Cho, J.-C. Chang, M.-X. Cai, P.-T. Lin, and Y.-J. Yang*, “Dewetting Process of Silver Thin Films and Its Application on Percolative Pressure Sensors with High Sensitivity,” Polymers,Vol. 15, no. 1, 180 (2023) (SCI/SCIE) (doi: 10.3390/polym15010180)
  6. W.-Y. Wang, B.-Y. Lin, Y.-P. Liao, and Y.-J. Yang*, “Photothermal Thin Films with Highly Efficient NIR Conversion for Miniaturized Liquid-Crystal Elastomer Actuators,” Polymers, Vol. 14, no. 15, 2997 (2022) (SCI/SCIE) (doi: 10.3390/polym14152997)
  7. H. S. Tan, H.-Y. Chen, Y.-H. Chiu, R.-Y. Youh, and Y.-J. Yang*, “A Miniaturized Polymer-based Bimorph Actuator with Self-sensing Capability,” AIP Advances, Vol. 11, no. 8, 085315 (2021) (SCI/SCIE) (doi: 10.1063/5.0058377)
  8. Y.-C. Lin, M.-X. Cai and Y.-J. Yang*, “A Wireless Passive Pressure Sensor Using Microstructured Ferromagnetic Films with Tunable Effective Permeability,” Journal of Micromechanics and Microengineering, Vol. 31, 045017 (2021) (SCI/SCIE) (doi: 10.1088/1361-6439/abea04)
  9. S.-W. Huang, C.-C. Yeh and Y.-J. Yang*, “A Miniaturized Wireless Micro-heating Strip Integrated with an Acrylate-composite Temperature Regulator for Restenosis Prevention,” Sensors and Actuators A: Physical, Vol. 315, 112260 (2020) (SCI/SCIE) (doi: 10.1016/j.sna.2020.112260)
  10. M. Xu, C.-C. Yeh, S.-W. Chen, and Y.-J. Yang*, “Development and Characterization of a DC-driven Thermal Oscillator Using Acrylate-based Composites,” Applied Sciences, vol. 10, no. 11, 3825 (2020) (SCI/SCIE) ( doi:10.3390/app10113825)
  11. S.-W. Huang, F.-C. Lin and Y.-J. Yang*, “A Novel Single-actuator Bistable Microdevice with a Moment-driven Mechanism,” Sensors and Actuators A: Physical, Vol. 310, 111934 (2020) (SCI/SCIE) (doi: 10.1016/j.sna.2020.111934)
  12. C.-C. Yeh, M.-X. Xu, and Y.-J. Yang*, “A Respiratory Transducer Array to Exploit the Ultra-sensitive Temperature Dependence of an Acrylate-based Composite for Real-Time Respiration Rate Monitoring,” Applied Physics Letters, Vol. 114, No. 18, 183704 (2019) (SCI/SCIE) (doi: 10.1063/1.5088240)
  13. K.-H. Huang, Fu Tan, T.-D. Wang, and Y.-J. Yang*, “A Highly Sensitive Pressure-Sensing Array for Blood Pressure Estimation Assisted by Machine-Learning Techniques,” Sensors, Vol. 19, No. 4, 848 (2019) (SCI/SCIE) (doi: 10.3390/s19040848)
  14. K.-H. Huang, Fu Tan, T.-D. Wang, and Y.-J. Yang*, “A Tactile Sensing Array Integrated with Tension Sensor for Continuously Monitoring Blood Pulse Waves,” Microelectronic Engineering, Vol. 218, 111132 (2019) (SCI/SCIE) (doi: 10.1016/j.mee.2019.111132)
  15. C.-C. Yeh, S.-H. Lo, M.-X. Xu, and Y.-J. Yang*, “Fabrication of a Flexible Wireless Pressure Sensor for Intravascular Blood Pressure Monitoring,” Microelectronic Engineering, Vol. 213, pp. 55-61 (2019) (SCI/SCIE) (doi: 10.1016/j.mee.2019.04.009)
  16. K.-H. Huang, C.-T. Lin, Y.-T. Chen, and Y.-J. Yang*, “Study of Fractal Electrode Designs for Buckypaper-based Micro-Supercapacitors,” Journal of Applied Physics, Vol. 125, No. 1, 014902 (2018) (SCI/SCIE) (doi: 10.1063/1.5051702)
  17. D.-C. Yang, J.-M. Cai, and Y.-J. Yang*, ”A Tunable Magnetic Axis Microdevice Using Polymer-dispersed Liquid Crystal Doped with Magnetic Nanoparticles,” Applied Physics Letters, Vol. 113, No. 16, 161901 (2018) (SCI/SCIE) (doi:10.1063/1.5050266)
  18. K.-H. Huang, C.-M. Chang, F.-W. Lee, T.-D. Wang, and Y.-J. Yang*, “Highly-sensitive Linear Tactile Array for Continuously Monitoring Blood Pulse Waves,” Sensors and Actuators A: Physical, Vol. 280, pp. 261-270 (2018) (SCI/SCIE) (doi: 10.1016/j.sna.2018.07.045)
  19. Y.-T. Chen, K.-Y. Yeh, S.-H. Chen, C.-Y. Wang, C.-C. Yeh, M.-X. Xu, S.-S. Lu, Y.-J. Chen, and Y.-J. Yang*, “Tongue Pressure Sensing Array Integrated with a System-on-Chip Embedded in a Mandibular Advancement Splint,” Micromachines, Vol. 9, No. 7, 352 (2018) (SCI/SCIE) (doi:10.3390/mi9070352)
  20. Y.-T. Chen, C.-W. Ma, C.-M. Chang, and Y.-J. Yang*, “Micromachined Planar Supercapacitor with Interdigital Buckypaper Electrodes,” Micromachines, Vol. 9, No. 5, 242 (2018) (SCI/SCIE) (doi: 10.3390/mi9050242)
 
國際會議論文  (International Conference Papers)

 

  1. S.-K. Lin, Y.-C. Chen, J.-H. Lin, P.-H. Lin, W.-C. Kuo, and Y.-J. Yang, “A machinelearning-assisted silent speech interface utilizing micro-needle-array EMG electrodes and high-sensitivity strain sensing elements,” in proceeding of the 38th International Conference on Micro Electro Mechanical Systems (IEEE MEMS 2025), Kaohsiung, Taiwan, Jan. 19-23, 2025.
  2. P.-H. Lin, Y.-J. Chen, Z.-Y. Wang, Y.-L. Chi, L.-Y. Lo, C.-Y. Cho, and Y.-J. Yang, “A Miniaturized Self-Sensing Soft Actuator With Ionogel Characterization,” in proceeding of the 21th International Conference on Automation Technology (Automation 2024), Taipei, Taiwan, Nov. 22-24, 2024.
  3. S.-K. Lin, Y.-C. Chen, and Y.-J. Yang, “Ai-Based Electromyography and Strain Signal Conversion Model Design for Silent Speech Interface Device Development,” in proceeding of the 21th International Conference on Automation Technology (Automation 2024), Taipei, Taiwan, Nov. 22-24, 2024.
  4. C.-Y. Cho, and Y.-J. Yang, “Ultra-High Sensitivity LC Resonant Pressure Sensor Based on a Microstructured Ionogel Dielectric Layerl,” in EUROSENSORS XXXVI (EUROSENSORS 2024), Debrecen, Hungary, Sep. 1-4, 2024.
  5. L.-Y. Lo, P.-T. Lin, C.-Y. Cho, H.-Y. Wang, and Y.-J. Yang, “A Novel Miniaturized Bi-stable Self-sensing Soft Actuator Based on CNT-dispersed Ionogel,” in proceeding of the 37th International Conference on Micro Electro Mechanical Systems (IEEE MEMS 2024), Austin, TX, USA, Jan. 21-25, 2024.
  6. Y.-J. Chen, C.-L. Huang, Y.-L. Chi, and Y.-J. Yang, “A Bio-Inspired Light-Driven Soft Climbing Robot with Capabilities of Rapid Locomotion, Cargo Transport, and Direction Turning,” in proceeding of the 37th International Conference on Micro Electro Mechanical Systems (IEEE MEMS 2024), Austin, TX, USA, Jan. 21-25, 2024.
  7. Y.-H. Chiu, H.-Y. Wang, C.-Y. Cho, J.-J. Hsu, S.-F. Hung, and Y.-J. Yang, “Concentration Gradient Generators Synthesized by a Circuit-based Algorithm,” in proceeding of the 20th International Confernce on Automation Technology (Automation 2023), Taipei, Taiwan, Dec. 08-10, 2023.
  8. C.-Y. Cho, Y.-J. Chen, J.-C. Chang, M.-X. Cai, P.-T. Lin, and Y.-J. Yang, “Development of a Hightly-Sensitive Pressure Sensor Integrated with Nanoparticle Array,” in proceeding of the 20th International Confernce on Automation Technology (Automation 2023), Taipei, Taiwan, Dec. 08-10, 2023.
  9. J.-C. Chang, P.-T. Lin, C.-Y. Cho, M.-X. Cai, and Y.-J. Yang, “Characterizing a Hightly-Sensitive Pressure Sensor with Percolative Nanoparticle Array,” in proceeding of the 19th International Confernce on Automation Technology (Automation 2022), Kaohsiung, Taiwan, Nov. 11-14, 2022.
  10. Y.-H. Chiu, S.-F. Hung, J.-J. Hsu, and Y.-J. Yang, “CFD Simulation of Synthesized Concentration Gradient Generators with Arbitrary Profiles,” in proceeding of the 19th International Confernce on Automation Technology (Automation 2022), Kaohsiung, Taiwan, Nov. 11-13, 2022.
  11. J.-C. Chang, M.-X. Cai, and Y.-J. Yang, “A Highly-Sensitive Pressure Sensor Based on Percolative Nanoparticle Arrays Formed by Dewetting Effect,” in proceeding of the 35th International Conference on Micro Electro Mechanical Systems (IEEE MEMS 2022), Tokyo, Japan, Jan. 9-13, 2022.
  12. B.-Y. Lin, Y.-P. Liao, and Y.-J. Yang, “A Miniaturized Light-Driven Soft Crawler Based on Liquid Crystal Elastomer with High-Efficient Photothermal Thin-Film,” in proceeding of the 35th International Conference on Micro Electro Mechanical Systems (IEEE MEMS 2022), Tokyo, Japan, Jan. 9-13, 2022.
  13. M.-X. Cai, J.-C. Chang, and Y.-J. Yang, “Fabrication of a Percolative Metal Nanoparticle Arrays Using Dewetting Process,” in proceeding of the 18th International Confernce on Automation Technology (Automation 2021), Kimmen, Taiwan, Nov. 12-14, 2021.
  14. Y.-P. Liao, B.-Y. Lin, and Y.-J. Yang, “Fabrication of Miniaturized Light-Driven Soft Crawlers Based on Liquid Crystal Elastomer,” in proceeding of the 18th International Confernce on Automation Technology (Automation 2021), Kimmen, Taiwan, Nov. 12-14, 2021.
  15. J.-J. Hsu, Y.-H. Chiu and Y.-J. Yang, “Development of a Microfluidic Design Module for Concentration Gradient Generator,” in proceeding of the 18th International Confernce on Automation Technology (Automation 2021), Kimmen, Taiwan, Nov. 12-14, 2021.
  16. M.-X. Cai and Y.-J. Yang, “A Wireless Cardiovascular Pressure Sensor Based on An Iontronic Film with High Sensitivity,” in proceeding of the 34th International Conference on Micro Electro Mechanical Systems (IEEE MEMS 2021), Online, Jan. 25-29, 2021.
  17. Y.-P. Liao, C.-C. Yeh, S.-W. Huang, and Y.-J. Yang, “A Wireless Pressure Sensor and an Acrylate-Based Temperature-Regulated Microheater,” in proceeding of the 17th International Conference on Automation Technology (Automation 2020), Hualien, Taiwan, Nov. 12-14, 2020.
  18. C.-C. Yeh and Y.-J. Yang, “An RF-powered Wireless Micro-heater Integrated with Acrylate-composite-based Temperature Regulator for Hyperthermia Treatment,” in proceeding of the 33rd International Conference on Micro Electro Mechanical Systems (IEEE MEMS 2020), Vancouver, Canada, Jan. 18-22, 2020.
  19. S.-W. Huang, F.-C. Lin and Y.-J. Yang, “A Novel Bistable Device Driven by Single Actuator via Moment Input,” in proceeding of 33rd International Conference on Micro Electro Mechanical Systems (IEEE MEMS 2020), Vancouver, Canada, Jan, 18-22, 2020.
  20. Y.-C. Lin and Y.-J. Yang, “A Magnetic-Polymer-Based Passive Pressure Sensor Realized with A Foldable Parylene Substrate,” in proceeding of the 33rd International Conference on Micro Electro Mechanical Systems (IEEE MEMS 2020), Vancouver, Canada, Jan. 18-22, 2020.
 
國內期刊論文  (Domestic Journal Article)

 

  1. 宋同正,張哲肇,李佳頤,候宜廷,張文瑋,楊燿州, “高齡者智慧健康照護之產品使用性研究-以智慧藥盒為例”, 人因工程學刊, 第14卷, 第一期, pp. 15-26 (2012)
  2. 賴昱澤,馬政文,陳永明,林俊良,鄭茗元,楊燿州, “仿生人形機器人之發展-子計畫一:可撓式壓剪應力感測陣列系統之開發”,工程科技通訊, 111期, 第166-170頁, (2011)
  3. 黃毓傑, 廖信宏, 黃本立, 楊燿州, 林啟萬, 呂學士, “植入式CMOS即時釋藥系統單晶片”, 零組件雜誌, 214期, pp. 36-39 (2009)
  4. 林啟萬, 呂學士, 施文彬, 楊燿州, 邱南福, 廖信宏, 蔡燿全,歐育誠, 林志成, 黃敬文, 魯本立, 詹作晟, 方柏翔, 王常倫, 李義欽, 黃毓傑, 徐玄宗, 楊龍杰, 李雨, 趙福杉, 陳秋麟, 嚴家鈺, 李世元, 林世明, 李世光, 吳光鐘, “植入式多功能無線生醫感測系統研發”, 電子資訊, 第15卷, 第一期, pp. 28-39 (2009)
  5. 廖信宏, 黃毓傑, 黃榮章, 陳春豪, 黃榮山, 楊燿州, 林啟萬,林世明, 呂學士, “無線生醫C-反應蛋白感測與即時釋藥治療系統設計”, 電子資訊, 第15卷, 第一期, pp. 40-50 (2009)
 
國內會議論文  (Domestic Conference Papers)

 

  1. Zhe-Wei Lin*, Hsuan-Yu Chen, Chao-Chi Yeh, Shao-Hsiang Lo, and Yao-Joe Yang, “A Passive Flexible Pressure Sensor for Wirelessly Monitoring Cardiovascular Pressure,” Automation 2019,  臺北, 臺灣, 2019.
  2. 葉釗齊, 馬正文, 張家銘, 蔡俊旻, 楊燿州, “應用於止鼾牙套支應利幹測器陣列開發”, 第二十四屆全國自動化科技研討會 (Automation 2016), 臺中, 臺灣, 2016.
  3. 蔡俊旻, 郭瑞昌, 楊燿州, “利用磁場控制與驅動之水膠為型手爪”, 第二十四屆全國自動化科技研討會 (Automation 2016), 臺中, 臺灣, 2016.
 
專書

 

  1. 楊燿州, “微機電系統之模擬與分析技術” (第十二章主編), 微機電系統技術與應用, 行政院國家科學委員會, 精密儀器發展中心出版, 2003.
  2. Y.-J. Yang, Design Strategy and Numerical Analysis of Field Emission Devices,” doctoral dissertation in Electrical Engineering, MIT, 1999.
  3. Y.-J. Yang, “Squeeze-film damping for MEMS Structures,” master thesis in    Electrical Engineering, MIT, 1997.
  4. Y.-J.Yang, “Characterization of a Bistable Thermal Microactuator,” master thesis in Mechanical Engineering, UCLA, 1995.